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Effect of Mesh Geometry on Power, Efficiency, and Homogeneity of Barrier Discharges in the Presence of Glass Dielectric

机译:在玻璃电介质存在下,网格几何形状对势垒放电的功率,效率和均质性的影响

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This paper will describe the influence of mesh geometry on the homogeneity of discharges, power, and efficiency of ozone generation. Homogeneous discharges increase the efficiency of the generation of ozone. Geometry of mesh electrodes affects the power and type of discharges, concentration, and efficiency of the ozone generation. The analysis of selected results indicates the need for the use of mesh electrodes with a small cross section at least 0.1 × 0.1 mm2mesh to obtain a homogeneous discharge. The mechanism by which the geometry of mesh electrodes on the homogeneity of discharge is illustrated in this paper. Homogeneous discharges increase the efficiency of the generation of ozone that reduces the cost of ozone production. The results of the experimental studies show an increase in the average efficiency of 60% of the ozone generation and a 20% reduction in the demand for power with the constant concentration of ozone, justifies the problem.
机译:本文将描述网格几何形状对放电均匀性,功率和臭氧产生效率的影响。均质的放电提高了臭氧的产生效率。网状电极的几何形状会影响放电的功率和类型,浓度以及产生臭氧的效率。对选定结果的分析表明需要使用横截面至少为0.1×0.1 mm的网状电极 n 2 nmesh以获得均匀放电。本文阐述了网状电极几何形状对放电均匀性的影响机理。均质排放提高了臭氧的产生效率,从而降低了臭氧生产的成本。实验研究的结果表明,在臭氧浓度恒定的情况下,平均产生臭氧效率提高60%,而对电力的需求却降低20%,这解决了这一问题。

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